CN212711366U - Postal parcel adjusting and conveying assembly - Google Patents
Postal parcel adjusting and conveying assembly Download PDFInfo
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- CN212711366U CN212711366U CN202021009258.5U CN202021009258U CN212711366U CN 212711366 U CN212711366 U CN 212711366U CN 202021009258 U CN202021009258 U CN 202021009258U CN 212711366 U CN212711366 U CN 212711366U
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- grid plate
- postal
- conveyor belt
- strip conveyor
- swinging
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Abstract
The utility model relates to a postal parcel adjusting and conveying assembly, which comprises a first strip conveyor belt and a second strip conveyor belt which are connected in sequence and used for conveying postal parcels; a first code scanner for scanning postal labels of postal parcels is arranged above the first belt conveyor; a second bar code scanner for scanning postal labels of postal parcels is arranged above the second strip conveyor belt; the first and second strip conveyors each comprise a plurality of parallel strips with transverse gaps: a turnover component is arranged between the first strip conveyor belt and the second strip conveyor belt; the utility model relates to a rationally, compact structure and convenient to use.
Description
Technical Field
The utility model relates to a postal parcel adjustment conveying subassembly, the utility model discloses mainly be applicable to file class parcel.
Background
CN201920852299.1 automatic assembly line of postal parcel extranal packing provides one set of assembly line, but, need sweep sign indicating number and conveying before the packing, because when the parcel was placed, what probably the bar code had was on the upper surface under the surface, need artifical letter sorting to scan the collection, its intensity of labour is big, wastes time and energy, how to realize automatic scanning, makes the parcel label orientation unanimously become the technical problem that the urgent need was solved.
In addition, during the transfer, there is a problem that the label orientation is not uniform when the article is unloaded.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem that a postal parcel adjusts conveying subassembly is provided overall.
In order to solve the above problems, the utility model adopts the following technical proposal:
a postal parcel adjusting and conveying assembly comprises a first belt conveyor and a second belt conveyor which are connected in sequence and used for conveying postal parcels; a first code scanner for scanning postal labels of postal parcels is arranged above the first belt conveyor; a second bar code scanner for scanning postal labels of postal parcels is arranged above the second strip conveyor belt; the first and second strip conveyors each comprise a plurality of parallel strips with transverse gaps: a turnover component is arranged between the first strip conveyor belt and the second strip conveyor belt;
the flip assembly flips the postal package 180 deg..
As a further improvement of the above technical solution:
the overturning assembly comprises a first swinging shaft which is transversely arranged at the lower part of the output end of the first strip conveyor belt; a first swinging grid plate used for receiving postal parcels is arranged on the first swinging shaft, and a first grid plate gap which is staggered with the first strip conveyor belt strip is arranged between the first swinging grid plates; a first through long groove which is through up and down is arranged on the output side of the first swing grid plate; a first lower supporting pin which is inserted into the first through long groove and used for supporting the bottom of the postal parcel is arranged at the overturning terminal of the first swinging grid plate;
a second rotating shaft is transversely arranged at the lower part of the input end of the second strip conveyor belt, a second rotating upper grid plate and a second rotating lower grid plate are arranged on the second rotating shaft in a swinging manner, and a second grid plate gap is formed in the second rotating upper grid plate; the second grid plate gap at the input side is meshed with the first swing grid plate in a staggered manner; the second grid plate gap on the output side is staggered with the strips of the second strip conveyor belt;
the second rotary lower grid plate rotates upwards to receive postal parcels output by the first swing grid plate in a turnover mode;
the second rotary upper grid plate receives postal parcels horizontally output by the first swing grid plate.
The length of the second rotary lower grid plate inserted into the first grid plate gap is larger than that of the second rotary upper grid plate inserted into the first grid plate gap.
The upper surface of the first swing grid plate is obliquely arranged.
The utility model relates to a rationally, low cost, durable, safe and reliable, easy operation, labour saving and time saving, saving fund, compact structure and convenient to use to parcel automatic identification and neatly put have been realized.
Drawings
Fig. 1 is a schematic view of the use structure of the present invention.
Wherein: 1. postal parcels; 2. a postal label; 3. a first belt conveyor; 4. a first code scanner; 5. a second belt conveyor; 6. a second code scanner; 7. a first swing shaft; 8. a first swing grid plate; 9. a first grid plate gap; 10. a first through slot; 11. a first lower support pin; 12. a second rotation shaft; 13. a second rotating upper grid plate; 14. a second grid plate gap; 15. a second rotating lower grid.
Detailed Description
As shown in fig. 1, the postal parcel adjusting and conveying assembly of the present embodiment includes a first belt conveyor 3 and a second belt conveyor 5 (which may be an O-belt, a toothed belt, a lawn belt, etc.) connected in sequence and used for conveying postal parcels 1; a first code scanner 4 for scanning postal labels 2 of postal packages 1 is arranged above the first strip conveyor 3 so as to scan the package information; a second code scanner 6 for scanning the postal label 2 of the postal package 1 is arranged above the second strip conveyor 5, so that the reversed back package information is scanned; first strip conveyer belt 3 and second strip conveyer belt 5 all include a plurality of parallels and have the strip of transverse gap to conveniently the upset subassembly inserts, realizes that the process links up: a turnover component is arranged between the first strip conveyor belt 3 and the second strip conveyor belt 5; therefore, when the package needs to be turned, the package can be turned, and when the package needs to be turned, the package can directly pass through the package.
The flip subassembly is 180 with postal parcel 1 upset to turn over the parcel, make all label faces of parcel all set up.
The overturning assembly comprises a first swinging shaft 7 transversely arranged at the lower part of the output end of the first strip conveyor belt 3 and can be driven by a universal rotating power mechanism such as a crankshaft connecting rod, a rotating gear and the like; a first swinging grid plate 8 for receiving the postal packages 1 is arranged on the first swinging shaft 7, and a first grid plate gap 9 which is staggered with the first strip conveyor belt 3 is arranged between the first swinging grid plates 8; a first through long groove 10 which is through up and down is arranged on the output side of the first swing grid plate 8; a first lower supporting pin 11 which is inserted into the first through long groove 10 and used for supporting the bottom of the postal package 1 is arranged at the overturning terminal of the first swinging grid plate 8; through the clearance arrangement, thereby realize good linking fast between the process, through elongated slot or opening, thereby realize when driving first swing grid tray 8 and turn, first penetrating elongated slot 10 overlaps on first lower support pin 11, thereby realize carrying the parcel. Meanwhile, the first lower supporting pin 11 is prevented from being blocked when the package needs to be turned over, so that the package can pass through smoothly.
A second rotating shaft 12 is transversely arranged at the lower part of the input end of the second strip conveyor 5, a second rotating upper grid plate 13 and a second rotating lower grid plate 15 are arranged on the second rotating shaft 12 in a swinging manner, and a second grid plate gap 14 is arranged on the second rotating upper grid plate 13; the second grid plate gap 14 on the input side is meshed with the first swinging grid plate 8 in a staggered manner; the second grid gaps 14 on the output side are staggered with the strips of the second strip conveyor 5; the second rotating upper grid 13 carries out the forwarding of the parcels and the second rotating lower grid 15 is in the lower part from the output end to the input end, whereby the parcels will be received.
The second rotary lower grid plate 15 rotates upwards to receive the postal packages 1 overturned and output by the first swing grid plate 8;
the second rotating upper grid 13 receives the postal packages 1 horizontally output by the first oscillating grid 8.
The length of the second rotating lower grid 15 inserted into the first grid gap 9 is greater than the length of the second rotating upper grid 13 inserted into the first grid gap 9, so as to better receive the package.
The upper surface of the first swing grid plate 8 is obliquely arranged so as to facilitate automatic inclination of the package.
When the utility model is used, a postal parcel 1 is placed on the first strip conveyor belt 3, the first code scanner 4 scans information, and when the parcel is not scanned, the label is defaulted to be downward, so that the parcel is placed for 180 degrees through the turnover assembly, the postal label 2 is upward and conveyed on the second strip conveyor belt 5, the second code scanner 6 is scanned, and the output end of the second strip conveyor belt 5 is provided with a cleaning manipulator; when a parcel is not scanned by either the first or second scanner 4, 6, the parcel label is considered to be a problem and is removed by the cleaning robot, manually entered, or revised.
When the turnover is not needed, the package is only conveyed horizontally through the first swinging grid plate 8 and the second rotating upper grid plate 13; when the package needs to be turned over, the first swinging grid plate 8 is driven by the first swinging shaft 7 to change the package into a vertical or toppling state, and the package is supported by the first lower supporting pin 11. In addition, the second rotating shaft 12 drives the second rotating lower grid plate 15 to turn over, so that the rear part of the first lower support pin 11 supports the parcel and drives the parcel to rotate, and the parcel slides down to the input end of the second strip conveyor belt 5 along the second rotating lower grid plate 15.
The utility model discloses a parcel upset for the label all sets up, realizes exporting smoothly simultaneously.
The present invention has been fully described for a clear disclosure, and is not further described in detail in the prior art.
Finally, it should be noted that: the above embodiments are only used to illustrate the technical solution of the present invention, and not to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, it should be understood by those skilled in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; it is obvious to those skilled in the art that a plurality of embodiments of the present invention may be combined. Such modifications and substitutions do not depart from the spirit and scope of the embodiments of the present invention.
Claims (3)
1. A postal parcel adjusting and conveying assembly comprises a first belt conveyor (3) and a second belt conveyor (5) which are connected in sequence and are used for conveying postal parcels (1); a first code scanner (4) for scanning postal labels (2) of the postal parcels (1) is arranged above the first belt conveyor (3); a second code scanner (6) for scanning the postal labels (2) of the postal parcels (1) is arranged above the second strip conveyor belt (5); it is characterized in that; the first strip conveyor belt (3) and the second strip conveyor belt (5) each comprise a plurality of parallel strips with transverse gaps: a turnover component is arranged between the first strip conveyor belt (3) and the second strip conveyor belt (5);
the overturning assembly overturns the postal package (1) by 180 degrees.
2. The postal package reconciliation transfer assembly of claim 1 wherein: the overturning assembly comprises a first swinging shaft (7) transversely arranged at the lower part of the output end of the first strip conveyor belt (3); a first swinging grid plate (8) used for receiving postal parcels (1) is arranged on the first swinging shaft (7), and a first grid plate gap (9) which is staggered with strips of the first strip conveyor belt (3) is arranged between the first swinging grid plates (8); a first through long groove (10) which is through up and down is arranged on the output side of the first swing grid plate (8); a first lower supporting pin (11) which is inserted into the first through long groove (10) and used for supporting the bottom of the postal parcel (1) is arranged at the overturning terminal of the first swinging grid plate (8);
a second rotating shaft (12) is transversely arranged at the lower part of the input end of the second strip conveyor belt (5), a second rotating upper grid plate (13) and a second rotating lower grid plate (15) are arranged on the second rotating shaft (12) in a swinging manner, and a second grid plate gap (14) is arranged on the second rotating upper grid plate (13); the second grid plate gap (14) on the input side is meshed with the first swing grid plate (8) in a staggered manner; the second grid plate gap (14) on the output side is staggered with the strips of the second strip conveyor belt (5);
the second rotary lower grid plate (15) rotates upwards to receive the postal packages (1) which are turned over and output by the first swing grid plate (8);
the second rotary upper grid plate (13) receives the postal packages (1) horizontally output by the first swing grid plate (8);
the length of the second rotary lower grid plate (15) inserted into the first grid plate gap (9) is larger than the length of the second rotary upper grid plate (13) inserted into the first grid plate gap (9).
3. The postal package reconciliation transfer assembly of claim 2 wherein: the upper surface of the first swinging grid plate (8) is obliquely arranged.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202021009258.5U CN212711366U (en) | 2020-06-05 | 2020-06-05 | Postal parcel adjusting and conveying assembly |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202021009258.5U CN212711366U (en) | 2020-06-05 | 2020-06-05 | Postal parcel adjusting and conveying assembly |
Publications (1)
Publication Number | Publication Date |
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CN212711366U true CN212711366U (en) | 2021-03-16 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202021009258.5U Active CN212711366U (en) | 2020-06-05 | 2020-06-05 | Postal parcel adjusting and conveying assembly |
Country Status (1)
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CN (1) | CN212711366U (en) |
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2020
- 2020-06-05 CN CN202021009258.5U patent/CN212711366U/en active Active
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